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通过光电子能谱法评估铜和铁配合物的量子力学方法

Assessment of Quantum Mechanical Methods for Copper and Iron Complexes by Photoelectron Spectroscopy.

作者信息

Niu Shuqiang, Huang Dao-Ling, Dau Phuong D, Liu Hong-Tao, Wang Lai-Sheng, Ichiye Toshiko

机构信息

Department of Chemistry, Georgetown University , Washington, DC 20057, United States.

Department of Chemistry, Brown University , Providence, Rhode Island 02912, United States.

出版信息

J Chem Theory Comput. 2014 Mar 11;10(3):1283-1291. doi: 10.1021/ct400842p. Epub 2014 Jan 22.

Abstract

Broken-symmetry density functional theory (BS-DFT) calculations are assessed for redox energetics [Cu(SCH)], [Cu(NCS)], [FeCl], and [Fe(SCH)] against vertical detachment energies (VDE) from valence photoelectron spectroscopy (PES), as a prelude to studies of metalloprotein analogs. The M06 and B3LYP hybrid functionals give VDE that agree with the PES VDE for the Fe complexes, but both underestimate it by ∼400 meV for the Cu complexes; other hybrid functionals give VDEs that are an increasing function of the amount of Hartree-Fock (HF) exchange and so cannot show good agreement for both Cu and Fe complexes. Range-separated (RS) functionals appear to give a better distribution of HF exchange since the negative HOMO energy is approximately equal to the VDEs but also give VDEs dependent on the amount of HF exchange, sometimes leading to ground states with incorrect electron configurations; the LRC-PBEh functional reduced to 10% HF exchange at short-range give somewhat better values for both, although still ∼150 meV too low for the Cu complexes and ∼50 meV too high for the Fe complexes. Overall, the results indicate that while HF exchange compensates for self-interaction error in DFT calculations of both Cu and Fe complexes, too much may lead to more sensitivity to nondynamical correlation in the spin-polarized Fe complexes.

摘要

作为对金属蛋白类似物研究的前奏,针对氧化还原能量学中的[Cu(SCH)]、[Cu(NCS)]、[FeCl]和[Fe(SCH)],依据价光电子能谱(PES)的垂直脱离能(VDE)对破缺对称性密度泛函理论(BS-DFT)计算进行了评估。M06和B3LYP杂化泛函给出的VDE与铁配合物的PES VDE相符,但对于铜配合物,二者均低估了约400毫电子伏特;其他杂化泛函给出的VDE是哈特里-福克(HF)交换量的递增函数,因此无法同时与铜和铁配合物都达成良好的一致性。范围分离(RS)泛函似乎能给出更好的HF交换分布,因为负的最高占据分子轨道(HOMO)能量近似等于VDE,但给出的VDE也依赖于HF交换量,有时会导致基态具有不正确的电子构型;短程下还原为10% HF交换的长程校正-佩德韦-伯克-恩泽霍夫(LRC-PBEh)泛函对二者给出的值稍好一些,不过对于铜配合物仍低约150毫电子伏特,对于铁配合物则高约50毫电子伏特。总体而言,结果表明,虽然HF交换在铜和铁配合物的DFT计算中补偿了自相互作用误差,但过多的HF交换可能会导致自旋极化铁配合物对非动态关联更敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dde5/3958136/7ae9f606351d/ct-2013-00842p_0001.jpg

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